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Plasmonic ZnO/Ag embedded structures as collecting layers for photogenerating electrons in solar hydrogen generation photoelectrodes

机译:等离子ZnO / Ag嵌入结构作为收集层,用于太阳能氢产生光电极中的光生电子

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摘要

A new fabrication strategy in which Ag plasmonics are embedded in the interface between ZnO nanorods and a conducting substrate is experimentally demonstrated using a femtosecond-laser (fs-laser)-induced plasmonic ZnO/Ag photoelectrodes. This fs-laser fabrication technique can be applied to generate patternable plasmonic nanostructures for improving their effectiveness in hydrogen generation. Plasmonic ZnO/Ag nanostructure photoelectrodes show an increase in the photocurrent of a ZnO nanorod photoelectrodes by higher than 85% at 0.5 V. Both localized surface plasmon resonance in metal nanoparticles and plasmon polaritons propagating at the metal/semiconductor interface are available for improving the capture of sunlight and collecting charge carriers. Furthermore, in-situ X-ray absorption spectroscopy is performed to monitor the plasmonic-generating electromagnetic field upon the interface between ZnO/Ag nanostructures. This can reveal induced vacancies on the conduction band of ZnO, which allow effective separation of charge carriers and improves the efficiency of hydrogen generation. Plasmon-induced effects enhance the photoresponse simultaneously, by improving optical absorbance and facilitating the separation of charge carriers.
机译:使用飞秒激光(fs-laser)诱导的等离子ZnO / Ag光电极,通过实验证明了一种新的制造策略,其中将Ag等离子体嵌入了ZnO纳米棒与导电基底之间的界面中。这种fs激光制造技术可以应用于生成可图案化的等离激元纳米结构,以提高其在氢生成中的有效性。等离子ZnO / Ag纳米结构光电极在0.5 V下显示ZnO纳米棒光电极的光电流增加超过85%。金属纳米粒子中的局部表面等离振子共振和在金属/半导体界面处传播的等离激元极化子均可用于改善捕获。阳光和收集电荷载体。此外,执行原位X射线吸收光谱法以监测ZnO / Ag纳米结构之间的界面上产生等离子体的电磁场。这可以揭示在ZnO导带上的感应空位,从而可以有效地分离电荷载流子并提高氢的产生效率。等离子体诱导的效应通过提高光吸收率并促进电荷载流子的分离,同时增强了光响应。

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